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Basic Modeling 1
Tekla Structures 12.0 Basic Training
September 19, 2006
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Contents
Contents 3
1 Basic Modeling 1 5
1.1 Start Tekla Structures 6
1.2 Create a New Model BasicModel1 7
1.3 Create Grids 10
1.4 Create Plane Views along Gridlines 12
1.5 Create Foundations 16
1.6 Create Columns 21
1.7 Create Beams 26
1.8 Create Slabs 41
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1 Basic Modeling 1
We will go through the basic functions of Tekla Structures: How to create a new structural
3D model, and how to create grids (i.e. module lines), grid views and structural members in
the model. As a result of this lesson the model will look as shown below.
In this lesson
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1.1 Start Tekla Structures
To start Tekla Structures, click the Windows Start button. Navigate through Programs >
Tekla Structures > Tekla Structures enu Europe. This will start Tekla Structures inEuropean environment using English language.
The modeling user interface is now opened. At first, most of the menu options and all the
icons are gray indicating that they are inactive. When you open an existing model or create anew model, the icons and available menu options become active.
Start Tekla
Structures
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1.2 Create a New Model BasicModel1
To start a new model, you first need to create an empty model database with a unique name.
In this lesson use the name BasicModel1.
1. Select File > New from the pull-down menu or click the New model icon in theStandard toolbar to open the New model dialog box.
Start a new model
2. At the center of the dialog box, Tekla Structures suggests the name "New Model" for themodel. The full path of the model folder is shown in the first field.
3. Replace the name "New Model" by BasicModel1.
4. Click the OK button (or Enter) to create the new model.The menus and icons become activated and the model name appears in the title bar of theTekla Structures window.
Every model must have a unique name. Tekla Structures does not allow
duplicate model names. Do not use special marks ( / \ ; : | ) in model names.
You can only have one model open at a time. If you already have a modelopen, Tekla Structures prompts you to save that model.
Tekla Structures automatically created a grid and a view according to the saved standard
view properties. The default 3D view and grid are shown below.
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Cyan dash-and-dot lines show the projections of the grids which are visible on the viewplane. Tekla Structures indicates the work area of a view using green, dashed lines. For more
information, see: Help: Modeling > Getting started > Basics.
To save the model:Save the model
5. Select File > Save from the pull-down menu or click the Save icon in the Standardtoolbar.
Remember to save your model every now and then, and always when openinganother model or exiting Tekla Structures.
Tekla Structures includes also an auto save feature that backs up and saves your work
automatically at set intervals. These are set in the Autosave properties dialog box obtained
from the Setup > Autosave pull-down menu.
For more information on saving and auto saving, see:
Help: Modeling > Getting started > Basics > Saving a model and exiting Tekla
Structures
Most commands of Tekla Structures are found both in menus (main or pop-up) and intoolbars (icons). In this training manual we will mainly use the pop-up menu to activate
commands.
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There are several ways to execute commands in Tekla Structures:
Icons Commands in main pull-down menu Commands in pop-up menu
By default all the commands are found in pull-down menu, and most of them
in the icons. A pop-up menu appears when you click the right mouse button(right-click). If you have an object selected, the commands on the pop-up menu
relate to that object.
For more information on Tekla Structures screen layout and toolbars, see:
Help: Modeling > Introduction > Screen layout
Help: Modeling > Introduction > Toolbars
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1.3 Create Grids
To create the appropriate grid for BasicModel1 as shown above, you can delete the existinggrid and create a new one from the Points > Grid pull-down menu. Alternatively you can
modify the existing grid.
To modify the existing grid:Modify theexisting grid
1. Double-click on the gridline.2. Complete the appearing Grid dialog box as shown below by filling in the X, Y and Z
coordinates and the labels for the gridlines.
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3. ClickModify to apply the new grid values.4. Enter the grid file name, GRID1, and click the Save as button to save the grid values for
later use. The settings are saved in the file GRID1.grd, which is stored in the attributes
subfolder of your model folder.
For more information on grids and dialog box buttons, see:
Help: Modeling > Introduction > Inputting information > Common buttons
The number of decimals used in the Grid dialog box (as well as in other
modeling dialog boxes) can be controlled from the Units and decimals...
dialog box obtained from the Setup pull-down menu.
When the grid was modified, the work area of the view, shown with the green dashed line,
was not updated.
To fit the work area according to the modified grid:Fit work area
1. Click the view to activate it.2. Right-click and select Fit work area from the pop-up menu.
The view should now look as shown below:
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1.4 Create Plane Views along Gridlines
We will now create Elevation and Plan views along the gridlines created in the previous
section.
A view is a representation of a model from a specific location. Each view is displayed in its
own window inside the Tekla Structures window. Each view has a view plane on which the
grids are visible and points are represented as yellow crosses. Points outside the view plane
appear as red dots.
For more information, see: Help: Modeling > Getting started > Views.
To create views along gridlines,Create grid views
1. Select one gridline.2. Right-click and select Create view > Grid views from the pop-up menu to open the
Creation of views along grid lines dialog box.
3. Change the View properties as shown above and click the Show button of the XYview plane to open the View properties dialog box.
4. Change the View depth values as shown below and clickOK to close the dialog box.
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5. Select the number of views as All and clickCreate in the Creation of views along gridlines dialog box.
The Views dialog box appears presenting all the created views. All invisible named views
are listed on the left, and all visible views on the right.
For more information on view properties, see:
Help: Modeling > Getting started > Views > View properties
To display or hide views:Display or hideviews
1. Click the Open named view list icon to open the Views dialog box (which is nowalready open).
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2. Select the view(s) you want to display or hide.3. Use the arrows to move view(s) from left to right (visible) or vice versa (invisible).
Do not keep too many views open at the same time. Nine is the maximum
number of open views. You can open or close named views by clicking the
Open named view list icon. Delete unnecessary views from the view list.
To switch between views, press Ctrl+Tab.
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You can rotate the model in a 3D view with rendered view type.Rotate the model
1. Press the key v.2. In the view, pick a center of rotation.3. Hold down the Ctrl key, and click and drag with the middle mouse button.With the shortcut Ctrl+P you can change the view angle between 3D and Plane, which is
very useful.
Change between3D / Plane
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1.5 Create Foundations
We will now create foundations for the BasicModel1.
Column footing
To create footings for columns:1800*1800 footing
1. Double-click on the Create pad footing icon. This will open Pad footing propertiesdialog box.
2. Complete the Pad footing properties dialog box as shown below and clickApply.
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3. In the 3d view, pick the grid intersection A-1 to create the footing.4. Create the rest of the 1800*1800 footings at other intersections of gridline A by picking
each position.
Help: Modeling > Parts > Part location > Position on work plane
Help: Modeling > Parts > Part location > Position depth
Help: Modeling > Parts > Part properties > Profile
You can undo (and redo) previous commands one by one since the last save by
clicking the icons or typing Ctrl + Z (Undo) and Ctrl + Y (Redo).
While still in the command,2700*2700 footing
5. Complete the Pad footing properties dialog box for a 2700*2700 footing as shownbelow and Apply this.
The footings on gridline B need offsetting from the gridline because there will be
additional columns modeled afterwards. This offset will be accomplished by adjusting
the Vertical Position value in the Pad footing properties dialog box.
6. Create the footings at intersections of the gridline B.7.
Right click and select Interrupt to end the command.
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The commands will stay active until you interrupt them.
To end commands, right-click and select Interrupt from the pop-up menu, or
press the Esc key.
To restart the last command used, press Enter.
Foundations for silos parametric profiles
We will create two identical circular foundations for the silos. At first, one foundation will be
created at the coordinate 4500,4500,0 and then the other foundation will be created as a copy
of the first one.
Tekla Structures contains standard (library), parametric, and user-defined profiles. For the
foundation, we will use parametric profiles.
Help: Modeling > Parts > Part properties > Profile
Help: Modeling > Settings and tools > Appendix A: Parametric Profiles
1. Double-click on the Create pad footing icon.Create footing
2. Complete the Pad footing properties dialog box as shown below and clickApply.You can select the profile for a part from the Select profile dialog box that
opens next to the Profile field in the part properties dialog box.
You can as well enter a profile name in the Profile field in the part properties
dialog box.
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3. Type 4500,4500 to define the position for the footing (typing the numbers automaticallydisplays the Enter a numeric location dialog box).
4. Press Enter (or click OK) and the foundation is created.
Help: Modeling > Settings and tools > Tools > Snapping
1. Click the footing once to select it.Copy the footing2. Right click and select Copy special > Translate from the pop-up menu..3. Click copy.
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Now the footings should look as shown below:
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1.6 Create Columns
We will first create two of the columns and then use the Copy command to create the other
columns.
You can create your columns and beams either in steel or concrete! Follow the
left side of the instruction for steel and the right side for concrete.
To create the first two columns.Createsteel/concretecolumns
Create steel columns
1. Double-click on the Create column icon.
Create concrete columns
1. Double-click on the Create concrete column
icon.
2. Complete the Column properties dialog
box as shown below.
2. Complete the Concrete column properties
dialog box as shown below.
3. Complete the dialog's Position tab as
shown below, and then clickApply.
3. Complete the dialog's Position tab as shown
below, and then clickApply.
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4. Pick the intersection of gridlines A-1 to create one column, and then pick grid B-1 tocreate the second column.
1. Select the columns that you just created by dragging a window across them.Copy columns2. Right click and select Copy special> Translate from the pop-up menu. Complete the
dialog box as shown below and clickCopy.
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Now all the columns appear in the model.
When you want to model identical structures, you can alternatively create one
footing (and its reinforcement), the steel column on top of it and the base plate
connection between the footing and the column, and copy this structural entity
to all other positions of similar structures.You can select multiple parts in the model by holding down the Ctrl-key when
selecting objects in the model.
Help: Modeling > Introduction > Selecting model objects > How to select objects
Silos
We will now model the steel silos by using solid parametric profiles. A more precise
alternative would be to create the silo as a circular hollow section with a contour plate
welded on top of it.
1. To create the silos, double-click on the Create column icon.Create silos
2. Complete the Column properties dialog box as shown below, and then clickApply.
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The visibility of objects in views depends on the work area, view depth, view
setup, and view filter. You can also temporarily hide parts in a view by using
the Hide tool (on the pop-up menu).
In the pictures hereafter all the model objects created may not always bevisible.
Help: Modeling > Getting started > Views > Displaying and hiding objects
in views
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1.7 Create Beams
Level 3850 beams
We will first create the beams at the +3850 level and then copy them (using the select filter)
to the two upper levels. Again, you can create the beams either in steel or in concrete.
1. Open the PLAN +3850 view.Createsteel/concretebeams
Create steel beams2. Double-click on the Create beam icon.
Create concrete beams2. Double-click on the Create concrete beam
icon.
3. Complete the Beam properties dialog box as
shown and Apply.
3. Complete the Concrete beam properties
dialog box as shown.
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4. Complete the dialog's Position tab as shown below, andApply.
5. In the PLAN +3850 view
pick the intersection ofgridlines A-4 and then B-4.
5. In the PLAN +3850 view pick the intersection of gridlines
A-4 and then B-4.
6. Continue at gridlines 5, 6, and 7.
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When inputting horizontal members always pick from left to right or from
bottom to top for consistency purposes.
Copy beams to upper levels1. Choose the select filter option beam_filter from the drop down list.
Help: Modeling > Settings and tools > Filter > Select filter
Filter beams
2. By dragging the mouse, select an area in the model as shown below.
1. Open the Grid 7 view, right-click and select Copy from the pop-up menu.Copy beams
2. Pick the gridline intersection B-3850 and then B-7350.3. Copy beams to level +13400 by repeating steps 1-2.4. Change the select filter option back to standard to enable also the selection of other
objects than beams.
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Level 13400 beams
Next we will create beams at the view +13400 level.
By using the same beam properties that we applied earlier, create the missing beams at the
gridline intersections shown in the figure below.
Create grid beams
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Next we will create beams in locations where no gridlines intersect. The snapping tools help
you pick points to position objects precisely without having to know the coordinates or
layout additional lines or points.
Create the rest ofthe beams
Help: Modeling > Settings and tools > Tools > Snapping
1. Double-click one of the existing beams in the model and press Apply.Create beam A2.
Start the beam command. 2. Start the concrete beam command.
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3. Make sure only the Snap to reference lines / points icon of the two main snap switcheson the right is pressed down.
4. Make sure the Snap to mid points and Snap to end points icons are pressed down.
5. Pick a midpoint of the beam between A-2 and A-3 and then the midpoint of the
beam between B-2 and B-3.
5. Pick a midpoint of the beam between A-2
and A-3 and then the midpoint of the beam
between B-2 and B-3.
We will pick the start position of beam B by using the gridline intersection A-1 as atemporary reference point and tracking along gridline 1 in the direction of intersection B-1
for 9000 mm.
Create beam B
We will then pick the second position of beam B using the temporary snap switch
Perpendicular.
1. Start the beam command. 1. Start the concrete beam command.Pick the firstposition of beamB
2. Hold down the Ctrl key and pick gridline intersection A-1 as the origin to show theFrom location coordinates.
3. Then use the cursor to snap (do not pick!!) in the correct direction (e.g. to gridlineintersection B-1).
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4. Type 9000 for the numeric location. (The Enter a numeric location dialog box willopen automatically.)
5. Press OK or Enter and the cursor snaps to the correct position. (=9000 mm from A-1 inthe direction of B-1).
6. Right click and select Perpendicular.Pick secondposition of beamB
7. Pick the second position on beam A (seebelow).
7. Pick the second position on beam A (see
below).
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While still in the beam command,Create beam C
8. Right click and select Intersection for snap override.
9. Pick the intersection of beam B andgridline 2 and then the intersection of
gridlines B-2.
9. Pick the intersection of beam B and
gridline 2 and then the intersection of
gridlines B-2.
We will first create one of the beams that frame around the silo and then by using the Copy >
Rotate command create the other three.
Create beam D
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Help: Modeling > Settings and tools > Settings and tools reference > Edit>Copy
>Rotate
1. Hold down the Ctrl key and pick gridline intersection A-1 to show the From locationcoordinates, use the cursor to snap (do not pick!!) in the correct direction. (E.g. grid
intersection B-1).
2. Type 4000 for the numeric location and press Enter, the cursor snaps to the correctposition.
3. Type the letter O on the keyboard to snap to positions in orthogonal directions on thework plane (0, 45, 90, 135, and 180 degrees).
4. Let the cursor snap to the midpoint as shown below and pick.5. Type the letter O to turn the ortho off.
1. Select the beam that you just created.Copy rotate thebeam
2. Right click and select Copy special > Rotate from the pop-up menu.
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3. Pick the center point of the silo as the point to define the rotation (select a view in whichthe silos are visible and pick near the circumference to snap to the center point). Theorigin X0 and Y0 values will appear in the dialog box.
4. Complete the other fields in the dialog.5. ClickCopy.We will now copy the beams to the other silo.Copy translate the
beam to the othersilo 1. Select the beams shown highlighted in the picture below (press the Ctrl key to add parts
to the selection).
2. Copy special > translate them 9000 mm in the x direction.
Bracing
Working in the Grid A elevation view, we will input the vertical steel bracing members using
the Create beam tool.
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1. Double-click on the Create beam icon.Create braces aand b
2. Complete the Beam properties dialog box as shown below and Apply.
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3. In the 3d view create brace a by first picking the gridline intersection A-2 and then themidpoint of column A-3.
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4. Create brace b by picking the top position of column A-2 and then midpoint of columnA-3.
We can see from the drawing above that the lower end of the brace needs 200 mm offsetting
from the grid level. Now we will use handles to move the part end.
Use handle tomove brace end
Help: Modeling > Parts > Part location1. Select brace a to display the handles.
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2. Select the yellow handle (Tekla Structures then highlights the handle).3. Right click and select Move special > Translate to move the handle 200 mm
upwards.
4. ClickMove.5. Repeat the procedure to move brace bs top handle 1000 mm downwards.1. Select braces a and b.Copy mirror
braces a and b2. Right click and select Copy special > Mirror3. In the 3d view, pick grid A-3 then grid B-3 to define the mirror line.4. ClickCopy.
Help: Modeling > Settings and tools > Settings and tools reference > Edit>Copy
>Mirror
Now we have modeled all the steel and concrete members in Model1. The model should look
like in the picture below.
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1.8 Create Slabs
Concrete hollow-core slabs
We will now create concrete hollow-core slabs. Instead of positioning the slabs to thegridline intersection we will model the slabs to the face of the steel columns.
In the PLAN +13400 view:Create hollow-core slabs
1. Double-click on the Create concrete beam icon.
2. Complete the Concrete beam properties dialog box as shown and Apply.
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If you have modeled steel columns and
beams:
3. Pick the intersection of the column flange
outer face and gridline 4 and then the
intersection of the column flange outer face
and gridline 5 (make sure that Snap togeometry lines/points is active).
If you have modeled concrete columns and
beams:
3. Pick the intersection of the column outer
border and gridline 4 and then the
intersection of the column outer border and
gridline 5 (make sure that Snap togeometry lines/points is active).
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1. Select the slab that you just created.Copy the slabs iny direction
2. Right click and select Copy special > Translate from the pop-up menu.3. Type 1200 in the dY field of the Copy translate dialog box and 10 as the number of
copies.1. Drag an area select, selecting all the concrete slabs.Copy the slabs in
x direction2. Right click and select Copy > Translate from the pop-up menu.3. Type 6000 in the dX field of the Copy - translate dialog box.
4. ClickCopy.
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Copy hollow-core slabs to levels 7350 and 3850
1. Hold down the Ctrl key and select all the hollow-core slabs by dragging 3 areas throughthe slabs.
Copy the slabs
2. Still holding down the Ctrl key, pick the two slabs shown in the picture below tounselect them.
3. Right click and select Copy special > Translate from the pop-up menu.4. Enter -6050 in the dZ field of the Copy special > Translate dialog box, clickCopy.5. Enter -9550 in the dZ field of the Copy special > Translate dialog box, clickCopy.
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Concrete slab
1. Double-click on the Create concrete slab icon.Start the slabcommand
2. Complete the Concrete slab properties dialog box as shown and Apply.
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3. In the PLAN +13400 view pick point A (intersection of column flange outer face andgridline 1, shown in the drawing above).
Pick positions forthe slab
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4. Let the cursor snap to the position just picked (do not pick!) and press y to lock the ycoordinate.
5. Let the cursor now snap to the end point of the beam near point B and pick.
6. Press y to release the coordinate lock.
7. Pick point C.
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8. Pick point D.
9.
Click the middle mouse button to create the slab.
1. Select the slab that you just created.Copy concreteslab
2. Copy translate the slab 9000 mm in x direction.
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Create in-situ slabs
Before we add reinforcements to concrete members we need to create additional 600 mm
wide in-situ slabs beside the hollow-core slab area in first and second floors. For this, zoomin to first floor in gridlines A and 5 6.
1. Double-click on the Create concrete slab icon.2. Set the profile height to 175 mm.
3. Press OK to close the dialog.4. Start picking the polygon shape at the middle of the hollow-core slab in gridline 5.
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